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一种天冬氨酸蛋白酶介导的切割作用调节类黄素氧还蛋白的结构与功能,并有助于在氧化应激中存活。

An aspartyl protease-mediated cleavage regulates structure and function of a flavodoxin-like protein and aids oxidative stress survival.

作者信息

Battu Anamika, Purushotham Rajaram, Dey Partha, Vamshi S Surya, Kaur Rupinder

机构信息

Laboratory of Fungal Pathogenesis, Centre for DNA Fingerprinting and Diagnostics, Hyderabad, India.

Graduate studies, Manipal Academy of Higher Education, Manipal, Karnataka, India.

出版信息

PLoS Pathog. 2021 Feb 25;17(2):e1009355. doi: 10.1371/journal.ppat.1009355. eCollection 2021 Feb.

Abstract

A family of eleven glycosylphosphatidylinositol-anchored aspartyl proteases, commonly referred to as CgYapsins, regulate a myriad of cellular processes in the pathogenic yeast Candida glabrata, but their protein targets are largely unknown. Here, using the immunoprecipitation-mass spectrometry approach, we identify the flavodoxin-like protein (Fld-LP), CgPst2, to be an interactor of one of the aspartyl protease CgYps1. We also report the presence of four Fld-LPs in C. glabrata, which are required for survival in kidneys in the murine model of systemic candidiasis. We further demonstrated that of four Fld-LPs, CgPst2 was solely required for menadione detoxification. CgPst2 was found to form homo-oligomers, and contribute to cellular NADH:quinone oxidoreductase activity. CgYps1 cleaved CgPst2 at the C-terminus, and this cleavage was pivotal to oligomerization, activity and function of CgPst2. The arginine-174 residue in CgPst2 was essential for CgYps1-mediated cleavage, with alanine substitution of the arginine-174 residue also leading to elevated activity and oligomerization of CgPst2. Finally, we demonstrate that menadione treatment led to increased CgPst2 and CgYps1 protein levels, diminished CgYps1-CgPst2 interaction, and enhanced CgPst2 cleavage and activity, thereby implicating CgYps1 in activating CgPst2. Altogether, our findings of proteolytic cleavage as a key regulatory determinant of CgPst2, which belongs to the family of highly conserved, electron-carrier flavodoxin-fold-containing proteins, constituting cellular oxidative stress defense system in diverse organisms, unveil a hidden regulatory layer of environmental stress response mechanisms.

摘要

一个由11种糖基磷脂酰肌醇锚定天冬氨酸蛋白酶组成的家族,通常被称为CgYapsins,调控致病性酵母光滑念珠菌中的众多细胞过程,但其蛋白质靶点在很大程度上尚不清楚。在这里,我们使用免疫沉淀-质谱方法,鉴定出类黄素氧还蛋白(Fld-LP)CgPst2是天冬氨酸蛋白酶CgYps1之一的相互作用蛋白。我们还报告了光滑念珠菌中存在四种Fld-LP,它们是系统性念珠菌病小鼠模型中在肾脏存活所必需的。我们进一步证明,在四种Fld-LP中,只有CgPst2是甲萘醌解毒所必需的。发现CgPst2形成同型寡聚体,并有助于细胞NADH:醌氧化还原酶活性。CgYps1在CgPst2的C末端进行切割,这种切割对于CgPst2的寡聚化、活性和功能至关重要。CgPst2中的精氨酸-174残基对于CgYps1介导的切割至关重要,用丙氨酸替代精氨酸-174残基也会导致CgPst2的活性和寡聚化增加。最后,我们证明甲萘醌处理导致CgPst2和CgYps1蛋白水平升高,CgYps1-CgPst2相互作用减弱,以及CgPst2切割和活性增强,从而表明CgYps1参与激活CgPst2。总之,我们发现蛋白水解切割是CgPst2的关键调控决定因素,CgPst2属于高度保守的含电子载体黄素氧还蛋白折叠的蛋白质家族,在多种生物体中构成细胞氧化应激防御系统,揭示了环境应激反应机制中一个隐藏的调控层面。

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